scholarly journals New position of vascular plants and verification given from Central Poland with particular emphasis on Scheuchzeria palustris L.

2018 ◽  
Vol 19 (6) ◽  
pp. 160-171
Author(s):  
Ryszard Plackowski ◽  
Joanna Sender
Phytotaxa ◽  
2015 ◽  
Vol 202 (3) ◽  
pp. 231
Author(s):  
Artur Pliszko ◽  
Waldemar Heise

Max Eugen Heinrich Grütter (30 March 1865–31 March 1897) was a German botanist interested in floristics and taxonomy of vascular plants and mosses (Abromeit 1897). He conducted intensive floristic studies on the territory of the former West and East Prussia, especially in the former West Prussian Province Schwetz (now north-central Poland) where he lived in the small village of Luschkowko (Grütter 1892, 1895a, 1895b, 1895c, 1897). His numerous findings had been frequently cited in “Flora von Ost‑ und Westpreussen” by Abromeit et al. (1898–1940). In 1890–1891, in the course of the floristic expeditions in the former West Prussian Province Schwetz, Grütter found interesting vascular plants which he deemed as new to science. The names of these taxa were validly published in Deutsche botanische Monatsschrift (Grütter 1892).


Author(s):  
Magdalena Zarzyka-Ryszka ◽  
Przemysław Ryszka

A detailed study of vascular plants in the Tobolinka Nature Reserve (Augustów Forest, NE Poland) was carried out in July 2016 and February 2020. The reserve covers a very small area, and the diversity of its plant communities is very low due to the high acidity of its habitats (extremely poor fen surrounding a small polyhumic lake; wet and mesic pine forest). Only 48 species were recorded, including five species red-listed nationally (e.g. Goodyera repens, Scheuchzeria palustris).


2010 ◽  
Vol 6 ◽  
pp. 145-150
Author(s):  
Katarzyna Zielińska ◽  
Janina Jakubowska-Gabara ◽  
Jeremi Kołodziejek

The aim of the study was to present “Herbarium” computer database. The basic goal of construction of the database was gathering and analysing of archival and contemporary floristic data referring to the area of Central Poland. Registered information considers the stands and characteristic biological and ecological traits of particular taxa. Life forms, indices of ecological requirements, the phytogeographical elements, protection and threat status are among them. The database enables the presentation of geographical distribution of taxa in the area of Central Poland with the cartogram method based on the grid of 2 km2 according to the Distribution Atlas of Vascular Plants in Poland (ATPOL).


The article presents the results of the research of rare and protected species of wetlands places flora of the Kharkiv region. According to the field studies results, literary sources analysis and materials of the CWU and KW herbarium, it has been established that at least 225 species of vascular plants are present in the flora of wetlands places. The annotated list of rare and protected species of flora of wetlands places in the region has been made. It contains 41 species. For each species, the status of protection is defined. 32 species are identified as insufficiently studied and requiring detailed research and estimation of their sozological significance, in order to determine the need for their protection at the regional level. In total, 15 species from the identified are listed in the Red Data Book of Ukraine: Lycopodiella inudata (L.) (Holub); Drosera anglica Huds.; Cirsium heterophyllum (L.) Hill; Caldesia parnassifolia (L). Parl.; Fritillaria meleagroides Patrin ex Schult. et Schul. fil.; Fritillaria meleagris L.; Anacamptis coriophora (L.) R.M.Bateman; Anacamptis palustris (Jacq.) R.M.Bateman, Pridgeon & M.W.Chase; Dactylorchiza fuchsii (Druce) Soo; Dactylorchiza incarnata (L.) Soo; Dactylorchiza majalis (Reichenb.) P.F.Hunt et Summer.; Epipactis palustris (L.) Crantz; Hammarbya paludosa (L.) O.Kuntze); Liparis loeselii (L.) Rich.; Scheuchzeria palustris L. 26 species are from the List of plant species which need the special protection in the territory of the Kharkiv region. One species is endemic (Rorippa brachycarpa (C.A.Mey) Hayek), one species is the tertiary relic (Caldesia parnassifolia (L.) Parl.). Five species of wetlands places flora (Anacamptis coriophora (L.) R.M.Bateman; Anacamptis palustris (Jacq.) R.M.Bateman, Pridgeon & M.W.Chase; Dactylorchiza fuchsii (Druce) Soo; Dactylorchiza majalis (Reichenb.) P.F.Hunt et Summer.; Liparis loeselii (L.) Rich.) are listed in the CITES; three species (Dactylorchiza incarnata (L.) Soo; Epipactis palustris (L.) Crantz.; Hammarbya paludosa (L.) O.Kuntze) are listed in the CITES Appendix ІІ. Two species (Caldesia parnassifolia (L.) Parl., Liparis loeselii (L.) Rich.) are listed in the Annex I of the Berne Convention. Communities of Glycerieta arundinaceae are listed in the Green Book of Ukraine. Six associations and formations are rare plant communities of the Green list of the Kharkiv region. It has been established that in total under the protection are 41 species of vascular plants of wetlands places flora that is 18.2% of the total number of species attributed to this ecological group, or 3.2% of the total Kharkiv region flora.


2011 ◽  
Vol 21 (1) ◽  
pp. 19-26 ◽  
Author(s):  
Maria Zając ◽  
Adam Zając

Directional northern element in the flora of vascular plants of PolandThe directional element is a local determinant of spatial diversity of flora of a given country, within widely understood geographical elements. In Poland, a country situated in the middle of Europe, most species belong to the transitional element (with no range limit in our country). Besides the transitional element, the directional northern element (with its southern limit in Poland) is present. It can be divided into two distinct groups: species that have their absolute southern range limit in Poland and those that have both southern and northern limits with a significant disjunction in Central Poland. Although they are two different groups, they will be discussed within the combined study. The first one constitutes 1.9% of the directional element, the second one 1.3%. As far as general ranges are concerned, Circumboreal and Eurosiberian species prevail in the first group, with a significant share of the taxa of geographical connective element. European-temperate taxa are the most numerous in the second group. The two above-mentioned groups will also be distinguished by their species belonging to the higher syntaxonomical units. Such a small share of the northern element in the flora of Poland confirms that our country belongs to the Central European Province, where the North-European element is, to a large extent, a relict of the earlier periods of the Holocene.


Author(s):  
A. E. Hotchkiss ◽  
A. T. Hotchkiss ◽  
R. P. Apkarian

Multicellular green algae may be an ancestral form of the vascular plants. These algae exhibit cell wall structure, chlorophyll pigmentation, and physiological processes similar to those of higher plants. The presence of a vascular system which provides water, minerals, and nutrients to remote tissues in higher plants was believed unnecessary for the algae. Among the green algae, the Chaetophorales are complex highly branched forms that might require some means of nutrient transport. The Chaetophorales do possess apical meristematic groups of cells that have growth orientations suggestive of stem and root positions. Branches of Chaetophora incressata were examined by the scanning electron microscope (SEM) for ultrastructural evidence of pro-vascular transport.


1998 ◽  
Vol 25 (2) ◽  
pp. 283-291
Author(s):  
P.S.M. PHIRI ◽  
D.M. MOORE

Central Africa remained botanically unknown to the outside world up to the end of the eighteenth century. This paper provides a historical account of plant explorations in the Luangwa Valley. The first plant specimens were collected in 1897 and the last serious botanical explorations were made in 1993. During this period there have been 58 plant collectors in the Luangwa Valley with peak activity recorded in the 1960s. In 1989 1,348 species of vascular plants were described in the Luangwa Valley. More botanical collecting is needed with a view to finding new plant taxa, and also to provide a satisfactory basis for applied disciplines such as ecology, phytogeography, conservation and environmental impact assessment.


2017 ◽  
Vol 28 (1-2) ◽  
pp. 28-35 ◽  
Author(s):  
B. A. Baranovski

Nowadays, bioecological characteristics of species are the basis for flora and vegetation studying on the different levels. Bioecological characteristics of species is required in process of flora studying on the different levels such as biotopes or phytocenoses, floras of particular areas (floras of ecologically homogeneous habitats), and floras of certain territories. Ramensky scale is the one of first detailed ecological scales on plant species ordination in relation to various environmental factors; it developed in 1938 (Ramensky, 1971). A little later (1941), Pogrebnyak’s scale of forest stands was proposed. Ellenberg’s system developed in 1950 (Ellenberg, 1979) and Tsyganov’s system (Tsyganov, 1975) are best known as the systems of ecological scales on vascular plant species; these systems represent of habitat detection by ecotopic ecomorphs of plant species (phytoindication). Basically, the system proposed by Alexander Lyutsianovich Belgard was the one of first system of plant species that identiified ectomorphs in relation to environmental factors. As early as 1950, Belgard developed the tabulated system of ecomorphs using the Latin ecomorphs abbreviation; he also used the terminology proposed in the late 19th century by Dekandol (1956) and Warming (1903), as well as terminology of other authors. The article analyzes the features of Belgard’s system of ecomorphs on vascular plants. It has certain significance and advantages over other systems of ecomorphs. The use of abbreviated Latin names of ecomorphs in tabular form enables the use shortened form of ones. In the working scheme of Belgard’s system of ecomorphs relation of species to environmental factors are represented in the abbreviated Latin alphabetic version (Belgard, 1950). Combined into table, the ecomorphic analysis of plant species within association (ecological certification of species), biotope or area site (water area) gives an explicit pattern on ecological structure of flora within surveyed community, biotope or landscape, and on environmental conditions. Development and application by Belgrard the cenomorphs as «species’ adaptation to phytocenosis as a whole» were completely new in the development of systems of ecomorphs and, in this connection, different coenomorphs were distinguished. Like any concept, the system of ecomorphs by Belgard has the possibility and necessity to be developed and added. Long-time researches and analysis of literature sources allow to propose a new coenomorph in the context of Belgard’s system of ecomorphs development: silvomargoant (species of forest margin, from the Latin words margo – edge, boundary (Dvoretsky, 1976), margo – margin, ad margins silvarum – along the deciduous forest margins). As an example of ecomorphic characterization of species according to the system of ecomorphs by Belgard (when the abbreviated Latin ecomorph names are used in tabular form and the proposed cenomorph is used), it was given the part of the table on vascular plants ecomorphs in the National Nature Park «Orelsky» (Baranovsky et al). The Belgard’s system of ecomorphs is particularly convenient and can be successfully applied to data processing in the ecological analysis of the flora on wide areas with significant species richness, and the proposed ecomorph will be another necessary element in the Belgard’s system of ecomorphs. 


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